Department of Restorative Dentistry and Biomaterials Sciences, Harvard University, Harvard School of Dental Medicine, Boston, MA 02115, USA.
J Esthet Restor Dent. 2010 Aug;22(4):223-32. doi: 10.1111/j.1708-8240.2010.00343.x.
Immediate loading in implant dentistry has provided several advantages for both patients and clinicians. Recent advances in computer-aided design/computer-aided manufacturing (CAD/CAM) technology, medical imaging and rapid prototyping have added to the armamentarium of implant dentistry in terms of efficiency, accuracy and predictability. Rapid prototyping and CAD/CAM technology are used to fabricate stereolithographic surgical templates for flapless implant placement. In addition to that, this technology is also used for the fabrication of zirconia frameworks. The zirconia-based implant restorations are gaining popularity in implant prosthodontics combining esthetic properties with strength and biocompatibility. The purpose of this article is to illustrate the steps for implant rehabilitation of the edentulous maxilla with zirconia prosthesis and report the 2-year clinical follow-up of novel technological advances in surgical placement, provisionalization and fabrication of a definitive restoration.
A comprehensive approach to full mouth implant rehabilitation using cutting edge technology is illustrated in a simplified manner.
在种植牙科中,即刻负载为患者和临床医生提供了多项优势。计算机辅助设计/计算机辅助制造(CAD/CAM)技术、医学成像和快速成型技术的最新进展在种植牙科的效率、准确性和可预测性方面提供了更多的手段。快速成型和 CAD/CAM 技术用于制造无瓣种植体放置的立体光刻手术模板。除此之外,该技术还用于制造氧化锆框架。基于氧化锆的种植体修复体在结合了美观性、强度和生物相容性的种植体修复方面越来越受欢迎。本文的目的是说明使用氧化锆修复体进行无牙上颌骨种植体修复的步骤,并报告在手术放置、临时修复和最终修复制作方面的新技术进展的 2 年临床随访结果。
以简化的方式说明了使用最先进技术进行全口种植体修复的综合方法。